To efficiently catalyze a chemical reaction, enzymes are required to maintain fast rates for formation of the Michaelis complex, the chemical reaction and product release. These distinct demands could be satisfied via fluctuation between different conformational substates (CSs) with unique configurations and catalytic properties. However, there is debate as to how these rapid conformational changes, or dynamics, exactly affect catalysis. As a model system, we have studied bacterial phosphotriesterase (PTE), which catalyzes the hydrolysis of the pesticide paraoxon at rates limited by a physical barrier - either substrate diffusion or conformational change. The mechanism of paraoxon hydrolysis is understood in detail and is based on a single,...
Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phosphotriester...
Diverse organophosphate hydrolases have convergently evolved the ability to hydrolyse man-made organ...
The bacterial phosphotriesterases catalyze hydrolysis of the pesticide paraoxon with very fast turno...
To efficiently catalyze a chemical reaction, enzymes are required to maintain fast rates for formati...
While the underlying chemistry of enzyme-catalyzed reactions may be almost identical, the actual tur...
The organophosphorous hydrolase (PTE) from Brevundimonas diminuta is capable of degrading extremely ...
<p>The bacterial enzyme phosphotriesterase (PTE) exhibits stereoselectivity toward hydrolysis of chi...
A theoretical study on the alkaline hydrolysis of paraoxon, one of the most popular organophosphorus...
How remote mutations can lead to changes in enzyme function at a molecular level is a central questi...
<div><p>Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phospho...
AbstractThe role of conformational change in substrate binding, catalysis and product release is rev...
Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phosphotriester...
Diverse organophosphate hydrolases have convergently evolved the ability to hydrolyse man-made organ...
Serum paraoxonase 1 (PON1) is a native lactonase capable of promiscuously hydrolyzing a broad range ...
International audienceThe redesign of enzyme active sites to alter their function or specificity is ...
Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phosphotriester...
Diverse organophosphate hydrolases have convergently evolved the ability to hydrolyse man-made organ...
The bacterial phosphotriesterases catalyze hydrolysis of the pesticide paraoxon with very fast turno...
To efficiently catalyze a chemical reaction, enzymes are required to maintain fast rates for formati...
While the underlying chemistry of enzyme-catalyzed reactions may be almost identical, the actual tur...
The organophosphorous hydrolase (PTE) from Brevundimonas diminuta is capable of degrading extremely ...
<p>The bacterial enzyme phosphotriesterase (PTE) exhibits stereoselectivity toward hydrolysis of chi...
A theoretical study on the alkaline hydrolysis of paraoxon, one of the most popular organophosphorus...
How remote mutations can lead to changes in enzyme function at a molecular level is a central questi...
<div><p>Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phospho...
AbstractThe role of conformational change in substrate binding, catalysis and product release is rev...
Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phosphotriester...
Diverse organophosphate hydrolases have convergently evolved the ability to hydrolyse man-made organ...
Serum paraoxonase 1 (PON1) is a native lactonase capable of promiscuously hydrolyzing a broad range ...
International audienceThe redesign of enzyme active sites to alter their function or specificity is ...
Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phosphotriester...
Diverse organophosphate hydrolases have convergently evolved the ability to hydrolyse man-made organ...
The bacterial phosphotriesterases catalyze hydrolysis of the pesticide paraoxon with very fast turno...